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Measuring Phase Aberrations using a Pyramid Wavefront Sensor

机译:使用金字塔波前传感器测量相差

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The pyramid wavefront sensor (PWS) was initially proposed by astronomers to measure aberrations introduced by the atmosphere. More recently it has been used to measure aberrations of the human eye, and has been successfully incorporated into an adaptive optics loop to correct those aberrations. The raw sensor signal can be used as feedback to control a wavefront correcting device, or with appropriate scaling, to reconstruct the wavefront map in the pupil. In practice, use of dynamic modulation allows one to tune the sensitivity and range of the sensor to best suit the particular application. We describe a PWS primarily designed to perform in-vivo measurements of human eyes. The sensor is calibrated over a wide range of settings allowing one to choose those best suited to a specific task. For example, enhanced-sensitivity measurements of very small aberrations require small range (closed loop adaptive optics). Alternatively, if one wants to measure the aberrations of the eye without any correction, the range required is subject-dependent and can be large; the price paid is in reduced sensitivity . We present in-vivo measurements of human eyes taken at a number of experimental settings and compare the performance of the PWS at each.
机译:金字塔波前传感器(PWS)最初是由天文学家提出的,用于测量大气引入的像差。最近,它已被用于测量人眼的像差,并且已成功地并入到自适应光学环路中以校正那些像差。原始传感器信号可用作反馈,以控制波前校正设备,或以适当的比例缩放,以重建瞳孔中的波前图。在实践中,动态调制的使用允许人们调整传感器的灵敏度和范围,使其最适合特定应用。我们描述了一种PWS,其主要设计用于执行人眼的体内测量。该传感器在多种设置范围内进行了校准,从而可以选择最适合特定任务的传感器。例如,非常小的像差的增强灵敏度测量需要很小的范围(闭环自适应光学器件)。或者,如果要在不进行任何矫正的情况下测量眼睛的像差,则所需范围取决于对象,并且范围可能很大。付出的代价降低了敏感性。我们介绍了在许多实验设置下对人眼进行的体内测量,并比较了每种情况下PWS的性能。

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